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Building covert timing channels by packet rearrangement over mobile networks

机译:通过通过移动网络的数据包重新排列构建隐蔽定时频道

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Covert timing channels (CTCs) can transmit covert messages by modulating the timing behavior of an entity in overt network communication. In majority of existing solutions, the covert messages are hidden in inter-packet delays (IPDs) of legitimate traffic. These proposals are not suitable for voice over LTE (VoLTE) as IPDs of VoLTE traffic are sensitive to modulation and easy to be detected if changed. In order to build CTCs in such scenario, we propose a robust and undetectable CTC by packet rearrangement which can modulate covert message into number of packets between RTCP packets of VoLTE traffic. To improve the robustness, we employ Gray code to encode the covert message for mitigating the packet loss and reordering. To remain undetectable, we design the variable code length scheme to modulate the number of packets for fitting the distribution of overt traffic. Moreover, the design ensures tunability of different parameters, so that optimum trade-off between robustness and undetectability can be achieved at run-time. To the best of our knowledge, this work is the first to build a CTC using RTCP packet rearrangement suitable for VoLTE traffic. The experimental evaluation proves that the proposed CTC is statistically undetectable and outperforms the IPD-based CTCs in terms of robustness. (C) 2018 Elsevier Inc. All rights reserved.
机译:隐蔽定时通道(CTCS)可以通过调制公开网络通信中实体的定时行为来传输隐蔽消息。在大多数现有解决方案中,隐藏消息隐藏在合法流量的分组间延迟(IPDS)中。由于VOLTE流量的IPDS对调制且易于检测,因此,这些提案不适合LTE(VOLTE)的语音(VOLTE),如果发生变化,则易于检测。为了在这种情况下构建CTC,我们通过分组重新排列提出了一种稳健和无法检测的CTC,该数据包重新排列可以调制到VOLVE流量的RTCP分组之间的数据包数量。为了提高稳健性,我们使用格雷代码来编码隐蔽消息,以减轻数据包丢失和重新排序。为了保持无法察觉,我们设计可变码长方案以调制用于拟合公开流量分布的数据包数。此外,设计确保了不同参数的可调性,从而可以在运行时实现鲁棒性和未检测性之间的最佳折衷。据我们所知,这项工作是第一个使用适用于VOLTE流量的RTCP数据包重新排列来构建CTC的工作。实验评估证明,拟议的CTC在统计上不可检测,并且在鲁棒性方面优于基于IPD的CTC。 (c)2018年Elsevier Inc.保留所有权利。

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